Excellent global performance even on difficult-to-tag materials inlay
Industry segments: Automotive, Industrial Applications
AD Dogbone® U9 Pure™ inlays and tags are designed for industry and supply-chain applications, offering excellent performance on difficult-to-tag materials such as cardboard and plastic, glass and in other demanding, close-coupling environments.
AD Dogbone® U9 Pure™ inlays and tags have a good tolerance to the detuning effects of high dielectric materials and provide effective global performance. They can be easily converted into end-application usage, and are available in dry and wet delivery format. AD Dogbone® U9 Pure™ is equipped with NXP UCODE 9 IC and offers a self adjust feature to maximize product performance in challenging environments.
Avery Dennison inlays and tags are compliant with ISO 9001:2015 Quality Management and ISO 14001:2015 Environmental Management, which ensure a reliable and state-of-the-art product that meets a variety of application needs.
Sustainability - 100% Plastic Free
AD Dogbone® U9 Pure™ is produced via innovative antenna manufacturing technology where aluminum antenna is made directly on a paper making the products 100% plastic free, and according to an LCA (Life Cycle Analysis) study by an independent institute provide typically 70-90% savings in carbon footprint compared to traditional etching method. The manufacturing process also enables recycling excess materials and reducing the total amount of materials while maintaining the overall performance of the product. The impact of the Pure™ paper-based inlays and tags in cardboard recycling has been verified by a third-party laboratory in the EU against PTS-RH 021:97/2012. In the US, the hangtag construction is certified by West Michigan University against SBS-E Part I (repulpability) and Part II (recyclability). How2Recycle® has “pre-qualified1” the RFID construction when applied to a paper hangtag and determined that the structure is eligible for a widely recyclable label.
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1Additional components, product application, or other attributes may change the final recyclability of the package.